A method for connecting a hose with a tubular coupling with a pressure sleeve. The pressure sleeve is crimped at least at two sites separate from one another in the axial direction such that at least two crimp bands extending in the circumferential direction are developed, wherein each crimp band completely caps at least one peripheral groove that is developed on the inner surface of the pressure sleeve. Also disclosed is a method for connecting a hose with a tubular coupling with a pressure sleeve that is crimped at least at three sites separate from one another in the axial direction such that at least three crimp bands extending in the circumferential direction are developed, wherein at least one crimp band completely caps at least one peripheral groove that is developed on the inner surface of the pressure sleeve. tubular couplings, pressure sleeves and combinations are also provided.
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1. A tubular coupling with which a hose is connected by a pressure sleeve, wherein the pressure sleeve is crimped at least at two sites separated from one another in the axial direction such that at least two crimp bands are developed extending in the circumferential direction, wherein each crimp band completely caps at least one peripheral groove developed on the inner surface of the pressure sleeve; and
wherein in the proximity of two of the at least two crimp bands a V-shaped groove is developed in the tubular coupling;
wherein the at least one peripheral groove has a narrower width than that of the V-shaped groove, and
wherein an o ring is provided in the V-shaped groove.
8. A method for connecting a hose with a tubular coupling with a pressure sleeve, wherein the pressure sleeve is crimped at least at two sites separate from one another in the axial direction such that at least two crimp bands extending in the circumferential direction are developed, wherein each crimp band completely caps at least one peripheral groove that is developed on the inner surface of the pressure sleeve;
wherein in the proximity of two of the at least two crimp bands a V-shaped groove is developed in the tubular coupling;
wherein the at least one peripheral groove has a narrower width than that of the V-shaped groove, and
wherein an o ring is provided in the V-shaped groove.
10. A method for connecting a hose with a tubular coupling with a pressure sleeve, wherein the pressure sleeve is crimped at least at three sites separate from one another in the axial direction such that at least three crimp bands extending in the circumferential direction are developed, wherein at least one crimp band completely caps at least one peripheral groove developed on the inner surface of the pressure sleeve; and
wherein in the proximity of two of the at least two crimp bands a V-shaped groove is developed in the tubular coupling;
wherein the at least one peripheral groove has a narrower width than that of the V-shaped groove, and
wherein an o ring is provided in the V-shaped groove.
6. A tubular coupling with which a hose is connected with a pressure sleeve, wherein the pressure sleeve is crimped at least at three sites separated from one another in the axial direction such that at least three crimp bands are developed extending in the circumferential direction, wherein at least one crimp band completely caps at least one peripheral groove developed on the inner surface of the pressure sleeve; and
wherein in the proximity of two of two of the at least three crimp bands a V-shaped groove is developed in the tubular coupling;
wherein the at least one peripheral groove has a narrower width than that of the V-shaped groove, and
wherein an o ring is provided in the V-shaped groove.
2. A tubular coupling as in
3. A combination of a pressure sleeve with at least two bands extending in the circumferential direction and are crimped and each completely capping at least one peripheral groove developed on the inner surface of the pressure sleeve, and the tubular coupling according to
4. A combination of a pressure sleeve with at least two bands extending in the circumferential direction to be crimped and each completely capping at least one peripheral groove developed on the inner surface of the pressure sleeve, and the tubular coupling according to
7. A combination of a pressure sleeve with at least two bands extending in the circumferential direction and are crimped and each completely capping at least one peripheral groove developed on the inner surface of the pressure sleeve, and the tubular coupling according to
9. A method according to
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This Application claims priority from German Patent Application No. 102017209579.2 filed Jun. 7, 2017, which is hereby incorporated by reference in its entirety.
The invention relates to a method for connecting a hose with a tubular fitting or coupling by means of a pressure sleeve, as well as to a tubular coupling, a pressure sleeve, and a combination of same.
It is frequently necessary, in particular in the field of motor vehicle air-conditioning systems, to connect flexible hoses that conduct refrigerants, for example, with tubular couplings that may be provided on condensers, evaporators, and pumps. The described connection is conventionally carried out thereby that the hose is slid onto the tubular coupling and the pressure sleeve crimped onto the hose by applying pressure. The particular challenge encountered herein is ensuring the secure retention of the hose on the tubular coupling even under comparatively high pressures.
KR 10-2006-0095016 A describes grooves that can be provided on the tubular coupling and JP 4437613 B2 relates to grooves on the inside of the pressure sleeve.
Against this background the invention addresses the problem of providing a method as well as the components to be utilized therefor, with which the secure retention of a hose on a pressure-side coupling is ensured.
The problem is resolved, for one, through the method described herein.
Accordingly, the method according to the invention is distinguished thereby that the pressure sleeve is crimped at least at two sites separated from one another in the axial direction, and that of the generated crimp bands, in the case of two such bands each crimp band, completely caps at least one peripheral groove that is developed on the inner surface of the pressure sleeve. In the case of three or more crimp bands at least one crimp band caps completely at least one peripheral groove that is developed on the inner surface of the pressure sleeve. By the described capping is understood that the particular crimp band has a width in the axial direction that is greater or equal to the width of the peripheral groove in the axial direction and that the peripheral groove does not project from the region of the crimp band in the axial direction. The pressure-side coupling can also be referred to as nipple and the crimping applied according to the invention can also be referred to as compressing or squeezing. The critical issue in this context is only that pressure is applied at the periphery in such manner that a deformation zone is developed in the form of a band, wherein the generated crimp band does not necessarily need to extend over the entire circumference.
In both of the above described variants through the congruent position of at least one crimp band and one peripheral groove, developed on the inner surface of the pressure sleeve, the friction between the pressure sleeve and the hose as well as between the hose and the tubular coupling or nipple, that are disposed in this sequence from the outside toward the inside, can be increased to an exceptional degree.
Therewith the reliability of the connection is increased. This applies, for example, to air-conditioning systems in which the refrigerant R744 is used and in which the pressure is up to ten times higher than is the case in conventional air-conditioning systems in which, for example, R134a or R1234yf is used. Through the method according to the invention the reliable connection between hose and tubular coupling can therewith be advantageously maintained even at especially high pressures without the pressure sleeve having to be lengthened and/or without the NVH (noise, vibration, harshness, the occurrence of noise due to oscillations) being negatively affected and/or without being forced to use expensive metal hoses or pipes. By avoiding longer pressure sleeves, and the longer free length of the hose resulting therefrom, the NVH attenuation can be improved.
Instead, within the scope of the invention, a resilient hose of a polymer, as well as a pressure-side coupling of aluminum, can advantageously be employed. As stated above, thereby that on the inner side of at least one crimp band a peripheral groove is developed on the pressure sleeve, the friction at the hose, and therewith also between the hose and the tubular coupling, is increased. It should be stated that in the case of three or more crimp bands, these have preferably substantially the same spacing from one another.
In view of the tubular coupling the problem defined above is essentially resolved through the appropriate characteristics stated herein. This applies equally to the pressure sleeve. It should be stated here that in view of the method all characteristics described precedingly and subsequently are equally applicable to the two, in each case, other subject matters and herein unfold their advantages.
The tubular coupling preferably comprises at least one O-ring implemented of an elastic material, such as rubber, that is provided in the circumferential direction about the tubular coupling. The O-ring can preferably be disposed in a peripheral groove in the tubular coupling.
In view of the pressure sleeve according to the invention, it is preferred that it comprises on its inner surface at least one peripheral groove provided between two bands to be crimped. The effect of enhanced friction according to the invention can hereby be increased.
With regard to the peripheral groove(s), it has further been found to be of advantage if at least one peripheral groove has substantially a U-shaped cross section. Stated differently, the bottom of the groove extends substantially parallel to the axial direction of the pressure sleeve and the side walls of the groove substantially perpendicular thereto. In particular the last stated measure can also only apply to one side wall and be combined with a different, for example curved, in particular semicircular, bottom and/or with a bottom oriented differently from the one described. In particular, a respective groove can comprise a side wall, located on the side the free length of the hose, that is developed deeper than the side wall located on the side of the tubular coupling such that the bottom of the groove, viewed in longitudinal section in the direction of the hose, is inclined downwardly on the underside of the pressure sleeve and, on the upper side, is inclined upwardly such that an especially secure anchoring is established.
In the following the invention will be described in further detail in conjunction with an embodiment example depicted in the drawing. Therein show:
As shown in
As depicted in
As can be seen in
Závorka, Zdenek, Machynák, Augustin
Patent | Priority | Assignee | Title |
Patent | Priority | Assignee | Title |
3237974, | |||
4407532, | Jan 26 1981 | Dana Corporation | Hose end fitting |
20150292661, | |||
DE102011087176, | |||
DE10351102, | |||
DE2104744, | |||
DE2423347, | |||
FR1281042, | |||
FR2197143, | |||
JP4437613, | |||
KR101660475, | |||
KR20000030464, | |||
KR20060095016, | |||
WO2016049264, |
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May 21 2018 | ZAVORKA, ZDENEK | HANON SYSTEMS | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 046417 | /0459 | |
May 21 2018 | MACHYNAK, AUGUSTIN | HANON SYSTEMS | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 046417 | /0459 |
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